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磷酸钙涂层对促进新骨成骨的意义——综述

Significance of calcium phosphate coatings for the enhancement of new bone osteogenesis--a review.

作者信息

Surmenev Roman A, Surmeneva Maria A, Ivanova Anna A

机构信息

Department of Theoretical and Experimental Physics, National Research Tomsk Polytechnic University, 634050 Tomsk, Russia; Fraunhofer Institute for Interfacial Engineering and Biotechnology IGB, 70569 Stuttgart, Germany.

Department of Theoretical and Experimental Physics, National Research Tomsk Polytechnic University, 634050 Tomsk, Russia.

出版信息

Acta Biomater. 2014 Feb;10(2):557-79. doi: 10.1016/j.actbio.2013.10.036. Epub 2013 Nov 5.

Abstract

A systematic analysis of results available from in vitro, in vivo and clinical trials on the effects of biocompatible calcium phosphate (CaP) coatings is presented. An overview of the most frequently used methods to prepare CaP-based coatings was conducted. Dense, homogeneous, highly adherent and biocompatible CaP or hybrid organic/inorganic CaP coatings with tailored properties can be deposited. It has been demonstrated that CaP coatings have a significant effect on the bone regeneration process. In vitro experiments using different cells (e.g. SaOS-2, human mesenchymal stem cells and osteoblast-like cells) have revealed that CaP coatings enhance cellular adhesion, proliferation and differentiation to promote bone regeneration. However, in vivo, the exact mechanism of osteogenesis in response to CaP coatings is unclear; indeed, there are conflicting reports of the effectiveness of CaP coatings, with results ranging from highly effective to no significant or even negative effects. This review therefore highlights progress in CaP coatings for orthopaedic implants and discusses the future research and use of these devices. Currently, an exciting area of research is in bioactive hybrid composite CaP-based coatings containing both inorganic (CaP coating) and organic (collagen, bone morphogenetic proteins, arginylglycylaspartic acid etc.) components with the aim of promoting tissue ingrowth and vascularization. Further investigations are necessary to reveal the relative influences of implant design, surgical procedure, and coating characteristics (thickness, structure, topography, porosity, wettability etc.) on the long-term clinical effects of hybrid CaP coatings. In addition to commercially available plasma spraying, other effective routes for the fabrication of hybrid CaP coatings for clinical use still need to be determined and current progress is discussed.

摘要

本文对生物相容性磷酸钙(CaP)涂层作用的体外、体内及临床试验结果进行了系统分析。概述了制备CaP基涂层最常用的方法。可以沉积具有定制性能的致密、均匀、高度粘附且生物相容的CaP涂层或有机/无机杂化CaP涂层。已经证明CaP涂层对骨再生过程有显著影响。使用不同细胞(如SaOS-2细胞、人间充质干细胞和成骨样细胞)进行的体外实验表明,CaP涂层可增强细胞粘附、增殖和分化,从而促进骨再生。然而,在体内,CaP涂层响应的成骨的确切机制尚不清楚;事实上,关于CaP涂层有效性的报道相互矛盾,结果从高度有效到无显著效果甚至负面影响不等。因此,本综述强调了用于骨科植入物的CaP涂层的进展,并讨论了这些装置的未来研究和应用。目前,一个令人兴奋的研究领域是含有无机(CaP涂层)和有机(胶原蛋白、骨形态发生蛋白、精氨酰甘氨酰天冬氨酸等)成分的生物活性杂化复合CaP基涂层,目的是促进组织向内生长和血管化。有必要进一步研究以揭示植入物设计、手术过程和涂层特性(厚度、结构、形貌、孔隙率、润湿性等)对杂化CaP涂层长期临床效果的相对影响。除了市售的等离子喷涂外,用于临床的杂化CaP涂层的其他有效制备途径仍有待确定,并对当前进展进行了讨论。

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